Energy-Flame
Also written energy-flame
As the sources put it
Energy-Flame temperature is regulated by controlling the volume flow-rate of each fluid mediums (47 / 45/ 46) in direct relationship to applied voltage intensity (33 /36), as further stated in Figure (2B) as to Figure (3B).
Where it appears · 14
Documents 3
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Water Fuel Injection System
9× · introduced
…) of Figure (3B), as further illustrated in Figure (2) as to Figure (1). To ensure proper energy-flame projection and subsequent energy-flame stability, constant placement water pump (170) causes and allows ioniz…
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Water Fuel Injection System - Page 2
8× · introduced
To ensure proper energy-flame projection and subsequent energy-flame stability, constant displacement water pump (170) causes and allows ionized ambient air gases (46), noncombustible gases (45), and water (47) t…
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Water Fuel Injection System - Page 4
1× · introduced
…em activated by Pulse Gate Valve (190) of Figure (4-1) to further control a predetermined energy-flame (16). In essence, then, the Water Fuel Injector system (40) simply processes and converts water into a useful…
Bench findings 11
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Water pump displaces gases/water under pressure up to 125+ psi
1×
…ater (47) to be displaced under static pressure up to and beyond 125 psi to ensure proper energy-flame projection and stability.…
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Energy-flame temperature is controlled by fluid flow rate vs applied voltage
1×
Energy-flame temperature is regulated by controlling the volume flow-rate of fluid mediums (47/45/46) in direct relationship to applied voltage intensity (33/36), per Figures 4-2 and 4-5.…
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Increasing fluid displacement and voltage amplitude raises flame temperature
1×
To elevate energy-flame temperature, fluid-displacement (46/47) is increased while non-combustible gas (45) volume flow is maintained or reduced, together with an increase in applied pulse voltage amplitude (V0),…
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Decreasing voltage amplitude and non-combustible gas ratio lowers flame temperature
1×
To lower energy-flame temperature, the amount of non-combustible gases (45a...) is increased or the fluid flow rates (45/46/47) are reduced uniformly while lowering pulse voltage amplitude (V0).…
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Fluid-medium and voltage amplitude can be adjusted independently to set flame temperature
1×
A predetermined energy-flame temperature is established by adjusting fluid-medium (45/46/47) and applied voltage amplitude (V0) independently of each other to obtain the desired result.…
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Ignited compressed gases are projected through nozzle-port due to thermal expansion
1×
The resultant energy-flame pattern is maintained by allowing ignited, compressed, and moving gases (29, Figure 4-5) to be projected through and beyond nozzle-port (32) under pressure caused by gas expansion from…
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Pulse Gate Valve activates sequential pulsing of the Water Fuel Injector
1×
…-activated by the Pulse Gate Valve (190 of Figure 4-1) to further control a predetermined energy-flame (16).…
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Fluid displaced under static pressure up to and beyond 125 psi
1×
…ater (47) to be displaced under static pressure up to and beyond 125 psi to ensure proper energy-flame projection and stability.…
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Energy-flame temperature is controlled by fluid flow rate vs applied voltage intensity
1×
Energy-Flame temperature is regulated by controlling the volume flow-rate of fluid mediums (water, non-combustible gas, ionized air) in direct relationship to applied voltage intensity (33/36).…
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Increasing voltage amplitude raises flame temperature while managing fluid displacement
1×
To elevate energy-flame temperature, fluid-displacement of water and ionized air is increased while non-combustible gas volume flow rate is maintained or reduced, during an increase of applied voltage amplitude (…
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Decreasing voltage amplitude and increasing non-combustible gas lowers flame temperature
1×
To lower energy-flame temperature, the amount of non-combustible gas is increased or fluid flow rate is reduced uniformly while lowering pulse voltage amplitude (Vo).…